参考文献/References:
[1] VANNI M J, FLECKER A S, HOOD J M, et al. Stoichiometry of nutrient recycling by vertebrates in a tropical stream: linking biodiversity and ecosystem function[J]. Ecology Letters, 2002, 5(2):285- 293
[2] NIKLAS K J, OWENS T, REICH P B, et al. Nitrogen/phosphorus leaf stoichiometry and the scaling of plant growth[J]. Ecology Letters, 2010, 8(6): 636-642
[3] 贺金生, 韩兴国. 生态化学计量学: 探索从个体到生态系统的统一化理论. 植物生态学报[J], 2010, 34(1): 2-6 [HE Jinsheng, HAN Xingguo. Ecological stoichiometry: Searching for unifying principles from individuals to ecosystems[J]. Chinese Journal of Plant Ecology, 2010, 34(1): 2-6]
[4] YU Q, CHEN Q S, ELSER J J, et al. Linking stoichiometric homoeostasis with ecosystem structure, functioning and stability[J]. Ecology Letters, 2010, 13(1): 1390-1399
[5] 刘旻霞, 朱柯嘉. 青藏高原东缘高寒草甸不同功能群植物氮磷化学计量特征研究[J]. 中国草地学报, 2013,35(2): 52-58 [LIU Minxia, ZHU Kejia. Characteristics of nitrogen and phosphorus stoichiometry of plants in different functional groups on alpine meadow in the eastern edge of Tibetan Plateau[J]. Chinese Journal of Grassland, 2013,35(2): 52-58]
[6] 刘旻霞, 王刚. 高山草甸坡向梯度上植物群落与土壤中的N、P化学计量学特征[J]. 兰州大学学报(自然科学版), 2012, 48(3): 70-75 [LIU Minxia, WANG Gang. N and P stoichiometry of plant and soil on slope direction gradient subalpine meadows[J]. Journal of Lanzhou University(Natural Sciences), 2012,48(3): 70-75]
[7] 李征, 韩琳, 刘玉虹, 等. 滨海盐地碱蓬不同生长阶段叶片C、N、P化学计量特征[J]. 植物生态学报, 2012, 36(10): 1054-1061 [LI Zheng, HAN Lin, LIU Yuhong, et al. C, N and P stoichiometric characteristics in leaves of Suaeda salsa during different growth phase in coastal wetlands of China[J]. Chinese Journal of Plant Ecology, 2012, 36(10): 1054-1061]
[8] QU F Z, YU J B, DU S Y, et al. Influences of anthropogenic cultivation on C, N and P stoichiometry of reed-dominated coastal wetlands in the Yellow River Delta[J]. Geoderma, 2014, 236(4): 227-232
[9] WANG W Q, WANG C, SARDANS J, et al. Plant invasive success associated with higher N-use efficiency and stoichiometric shifts in the soil-plant system in the Minjiang River tidal estuarine wetlands of China[J]. Wetlands Ecology and Management, 2015, 23(5): 865-880
[10] 刘万德, 苏建荣, 李帅锋, 等. 云南普洱季风常绿阔叶林演替系列植物和土壤C、N、P化学计量特征[J]. 生态学报, 2010, 30(23): 6581-6590 [LIU Wangde, SU Jianrong, LI Shuaifeng, et al. Stoichiometry study of C, N and P in plant and soil at different successional stages of monsoon evergreen broad-leaved forest in Pu'er, Yunnan Province[J]. Acta Ecologica Sinica, 2010, 30(23): 6581-6590]
[11] MOORE T R, TROFYMOW J A, PRESCOTT C E, et al. Nature and nurture in the dynamics of C, N and P during litter decomposition in Canadian forests[J]. Plant and Soil, 2011, 339(1-2): 163-175
[12] 项文化, 黄志宏, 闫文德, 等. 森林生态系统碳氮循环功能耦合研究综述[J]. 生态学报, 2006, 26(7): 2365-2372 [XIANG Wenhua, HUANG Zhihong, YAN Wende, et al. Review on coupling of interactive functions between carbon and nitrogen cycles in forest ecosystems[J]. Acta Ecologica Sinica, 2006, 26(7): 2365-2372]
[13] 崔高阳,曹扬,陈云明. 陕西省森林各生态系统组分氮磷化学计量特征[J]. 植物生态学报, 2015, 39(12): 1146-1155 [CUI Gaoyang, CAO Yang, CHEN Yunming. Characteristics of nitrogen and phosphorus stoichiometry across components of forest ecosystem in Shaanxi Province[J]. Acta Phytoecologica Sinica, 2015, 39(12): 1146-1155]
[14] 姜沛沛, 曹扬, 陈云明. 陕西省森林群落乔灌草叶片和凋落物C、N、P生态化学计量特征[J]. 应用生态学报, 2016, 27(2): 365-372 [JANG Peipei, CAO Yang, CHEN Yunming. C, N, P stoichiometric characteristics of tree, shrub, herb leaves and litter in forest com-munity of Shaanxi Province, China[J]. Chinese Journal of Applied Ecology, 2016, 27(2): 365-372]
[15] 罗艳, 贡璐, 朱美玲,等. 塔里木河上游荒漠区4灌木植物叶片与土壤生态化学计量特征[J].生态学报, 2017, 37(24): 1-10 [LUO Yan, GONG Lu, ZHU Meiling, et al. Stoichiometry characteristics of leaves and soil of four shurbs in the upper reaches of the Tarim River Desert[J]. Acta Ecologica Sinica, 2017, 37(24): 1-10]
[16] 崔鸿侠, 肖文发, 黄志霖, 等. 神农架3种针叶林土壤碳储量比较[J]. 东北林业大学学报, 2014, 42(3): 69-72 [CUI Hongxia, XIAO Wenfa, HUANG Zhilin, et al. Soil organic carbon storage of three coniferous forests in Shennongjia Nature Reserve[J]. J Nor For Univ, 2014, 42(3): 69-72]
[17] 鲁志云, 宋亮, 王训, 等. 哀牢山森林凋落物与腐殖质及土壤的生态化学计量特征[J]. 山地学报, 2017,35(3):274-282 [LU Zhiyun, SONG Liang, WANG Xun, et al. Ecological Stoichiometry Characteristics of the Litterfall-Humus-Soil Continuum Systems under Different Successional Stages of the Subtropical Forest in SW China[J]. Mountain Research, 2017, 35(3):274-282]
[18] 赵培, 王群盈, 刘志鹏. 秦岭山区沟渠植物和土壤CNP生态化学计量特征[J]. 山地学报, 2017, 35(5):753-760 [ZHAO Pei, WANG Qunying, LIU Zhipeng. The Stoichiometric Characteristics of C, N, P for Plants and Soilin the Ditches at Shangluo City of Qinling Mountain[J]. Mountain Research, 2017, 35(5):753-760]
[19] 朱秋莲, 邢肖毅, 张宏, 等. 黄土丘陵沟壑区不同植被区土壤生态化学计量特征[J]. 生态学报, 2013, 33(15):4674-4682 [ZHU Qiulian, XING Xiaoyi, ZHANG Hong, et al. Soil ecological stoichiometry under different vegetation area on loess hilly-gully region[J]. Acta Ecologica Sinica, 2013, 33(15):4674-4682]
[20] MARSCHNER H. Mineral Nutrition of Higher Plants[J]. Journal of Ecology, 1995, 76(4):1250
[21] ELSER J J, FAGAN W F, KERKHOFF A J, et al. Biological stoichiometry of plant production: Metabolism, scaling and ecological response to global change[J]. New Phytologist, 2010, 186(3): 593-608.
[22] 杨钦周. 中国-喜马拉雅地区硬叶栎林的特点与分类[J].植物生态学与地植物学学报, 1990, 14(3): 197-211 [YAN Qinzhou. The characteristic and classification of Oak durisilvae in the Himalayan region of China[J]. Acta Phytoecologica et Geobotanica Sinica, 1990, 14(3): 197-211]
[23] 周浙昆. 中国栎属的地理分布[J].中国科学院研究生院学报, 1993, 10(1):95-102 [ZHOU Zhekun. Geographical distribution of Quercus from China[J]. Journal of Graduate School Academia Sinica, 1993, 10(1): 95-102]
[24] 刘兴良, 刘世荣, 何飞. 中国硬叶常绿高山栎类植物的分类与现代地理分布[J].四川林业科技, 2008, 29(3): 1-7 [LIU Xinliang, LIU Shirong, HE Fei. Taxonomy and modern geographical distribution of Species of Sclerophyllous Alpine Oak plants in China[J]. Journal of Sichuan Forestry Science and Technology, 2008, 29(3): 1-7]
[25] 王国严, 徐阿生. 川滇高山栎研究综述[J]. 四川林业科技, 2008, 29(2): 23-29 [WANG Guoyan, XU Asheng. A review of researches on Quercus aquifolioides [J]. Journal of Sichuan Forestry Science and Technology, 2008, 29(2): 23-29]
[26] 刘千里, 徐雪梅, 刘兴良,等. 卧龙巴郎山川滇高山栎叶片营养元素的海拔梯度变化特征[J]. 四川林业科技, 2012, 33(3): 1-6 [LIU Qianli, XU Xuemei, LIU Xinliang, et al. Characteristics of macronutrient variation in leaves of Quercus aquifolioides along with the altitudinal gradientson the Balangshan mountain in Wolong Nature Reserve, China[J]. Journal of Sichuan Forestry Science and Technology, 2012, 33(3): 1-6]
[27] 施雅风. 第四纪中期青藏高原冰冻圈的演化及其与全球变化的联系[J]. 冰川冻土, 1998, 20(3): 5-16 [SHI Yafeng. Evolution of the Cryosphere in the Tibetan Plateau, China, and its Relationship with the Global Change in the Mid Quaternary[J]. Journal of Glaciology and Geocryology, 1998, 20(3): 5-16]
[28] 潘裕生. 横断山区地质构造分区[J]. 山地研究, 1989, 7(1): 3-12 [PAN Yusheng. Geological tectonic division of the Hengduan mountainous region[J]. Mountain Research, 1989, 7(1): 3-12]
[29] 余有德, 刘伦辉, 张建华. 横断山区植被分区[J]. 山地研究, 1989, 7(1): 47-55 [YU Youde, LIU Lunhui, ZHANG Jianhua. Vegetation regionalization of the Hengduan mountainous region[J]. Mountain Research, 1989, 7(1): 47-55]
[30] 黄成就,张永田,徐永椿,等.壳斗科[A].中国植物志(第22卷)[C].北京:科学出版社,1998:213-332[HUANG Chengchiu,CHANG Yongtian, XU Yongchun, et al. Fagaceae[A]. Flora of China(Vol. 22)[C]. Beijing: Science Press,1998:213-332]
[31] KERKHOFF A J, FANGAN W F, ELSER J J, et al. Phylogenetic and growth form variation in the scaling of nitrogen and phosphorus in the seed plants[J]. The American Naturalist, 2006, 168(4): 103-122
[32] VITOUSEK P M. Foliar and litter nutrients, nutrient resorption, and decomposition in Hawaiian Metrosideros polymorpha[J]. Ecosystems, 1998, 1(4): 401-407
[33] 贺合亮, 阳小成, 李丹丹, 等. 青藏高原东部窄叶鲜卑花碳、氮、磷化学计量特征[J]. 植物生态学报, 2017, 41(1): 126-135 [HE Heliang, YANG Xiaocheng, LI Dandan, et al. Stoichiometric characteristics of carbon, nitrogen and phosphorus of Sibiraea angustata shrub on the eastern Qinghai-Xizang Plateau[J]. Chinese Journal of Plant Ecology, 2017, 41(1): 126-135]
[34] NIKLAS K J, COBB E D. N, P, and C stoichiometry of Eranthis hyemalis(Ranunculaceae)and the allometry of plant growth[J]. American Journal of Botany, 2005, 92(8): 1256-1263
[35] MINDEN V, KLEYER M. Internal and external regulation of plant organ stoichiometry[J]. Plant Biology, 2014, 16(5): 897-907
[36] ELSER J J, ACHARYA K, KYLE M, et al. Growth rate-stoichiometry couplings in diverse biota[J]. Ecology Letters, 2003, 6(10): 936-943
[37] MAKINO W, COTNER J B, STERNER R W, et al. Are bacteriamore like animals than plants? Growth rate and resource dependence of bacterial C:N:P stoichiometry[J]. Functional Ecology, 2003, 17(1): 121- 130
[38] STERNER R W, ELSER J J. Ecological Stoichiometry: The Biology of Elements from Molecules to the Biosphere[J]. Princeton: Princeton University Press, 2003: 1-20
[39] ZHENG S X, SHANGGUAN Z P. Spatial patterns of leaf nutrient traits of the plants in the Loess Plateau of China[J]. Trees, 2007, 21(3): 357-370
[40] 杨梅, 王昌全, 袁大刚, 等. 不同生长期烤烟各器官C、N、P生态化学计量学特征[J]. 中国生态农业学报, 2015, 23(6): 686-693 [YANG Mei, WANG Changquan, YUAN Dagang, et al. C, N, P stoichiometry traits of different fluecured tobacco organs at different growth stages[J]. Chinese Journal of Eco-Agriculture, 2015, 23(6): 686-693]
[41] WRIGHT I J, REICH P B, CORNELISSEN J H C, et al. Assessing the generality of global leaf trait relationships[J]. New Phytologist, 2005, 166(2): 485-496
[42] REICH P B, OLEKSYN J. Global patterns of plant leaf N and P in relation to temperature and latitude[J]. Proceedings of the National Academy of Sciences of the United States of America, 2004, 101(30): 11001-11006
[43] 樊江文, 张良侠, 张文彦, 等. 中国草地样带植物根系N、P元素特征及其与地理气候因子的关系[J]. 草业学报, 2014, 23(5): 69-76 [FAN Jiangwen, ZHANG Liangxia, ZHANG Wenyan, et al. Plant root N and P levels and their relationship to geographical and climate factors in a Chinese grassland transect[J]. Acta Prataculturae Sinica, 2014, 23(5): 69-76.]
[44] REINERS W A. Complementary models for ecosystems[J]. The American Naturalist, 1986, 127(1): 59-73
[45] ELSER J J, FAGAN W F, DENNO R F, et al(2000). Nutritional constraints in terrestrial and freshwater food webs[J]. Nature, 2000, 408(6812): 578-580
[46] HE J S, FANG J Y, WANG Z H, et al. Stoichiometry and large-scale patterns of leaf carbon and nitrogen in the grassland biomes of China[J]. Oecologia, 2006, 149(1): 115-122
[47] HAN W X, FANG J Y, GUO D L, et al. Leaf nitrogen and phosphorus stoichiometry across 753 terrestrial plant species in China[J]. New Phytologist, 2005, 168(2): 377-385
[48] TESSIER J T, RAYNAI D J. Use of nitrogen to phosphorus ratios in plant tissue as an indicator of nutrient limitation and nitrogen saturation[J]. Journal of Applied Ecology, 2003, 40(3): 523-534
[49] 胡启武, 宋明华, 欧阳华, 等. 祁连山青海云杉叶片氮、磷含量随海拔变化特征[J]. 西北植物学报, 2007, 27(10): 2072-2079 [ HU Qiwu, SONG Minghua, OUYANG Hua, et al. Variations in Leaf N,P of Picea crassifolia along the Altitude Gradient in Qilian Mountains[J]. Acta Botanica Boreali-Occidentalia Sinica,2007, 27(10): 2072-2079
[50] 姜永雷, 邓莉兰, 黄晓霞. 不同海拔川滇高山栎叶片的解剖结构特征[J]. 江苏农业科学, 2015, 43(1): 195-198 [JIANG Yonglei, DENG Lilan, HUANG Xiaoxia. Anatomical structural characteristics of Quercus aquifolioides leaves in different altitudes[J]. Jiangsu Agricultural Sciences, 2015, 43(1): 195-198]